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Toxicity assessment of chlorpyrifos-degrading fungal bio-composites and their environmental risks

机译:毒死rif降解真菌生物复合物的毒性评估及其环境风险

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Bioremediation techniques coupling with functional microorganisms have emerged as the most promising approaches for in-situ elimination of pesticide residue. However, the environmental safety of bio-products based on microorganisms or engineered enzymes was rarely known. Here, we described the toxicity assessment of two previously fabricated fungal bio-composites which were used for the biodegradation of chlorpyrifos, to clarify their potential risks on the?environment and non-target organisms. Firstly, the acute and chronic toxicity of prepared bio-composites were evaluated using mice and rabbits, indicating neither acute nor chronic effect was induced via short-term or continuous exposure. Then, the acute mortality on zebrafish was investigated, which implied the application of fungal bio-composites had no lethal risk on aquatic organisms. Meanwhile, the assessment on soil organic matters suggested that no threat was posed to soil quality. Finally, by monitoring, the germination of cabbage was not affected by the exposure to two bio-products. Therefore, the application of fungal bio-composites for chlorpyrifos elimination cannot induce toxic risk to the?environment and non-target organisms, which insured the safety of these engineered bio-products for realistic management of pesticide residue, and provided new insights for further development of bioremediation techniques based on functional microorganisms.
机译:生物修复技术与功能性微生物的结合已成为原位消除农药残留的最有前途的方法。但是,基于微生物或工程酶的生物产品的环境安全性鲜为人知。在这里,我们描述了两种先前制造的用于毒死the生物降解的真菌生物复合物的毒性评估,以阐明它们对环境和非目标生物的潜在风险。首先,使用小鼠和兔子对制备的生物复合材料的急性和慢性毒性进行了评估,表明通过短期或连续接触不会引起急性和慢性作用。然后,研究了斑马鱼的急性死亡率,这表明使用真菌生物复合材料对水生生物没有致死危险。同时,对土壤有机质的评估表明,土壤质量没有受到威胁。最后,通过监测,白菜的发芽不受暴露于两种生物产品的影响。因此,使用真菌生物复合物消除毒死rif不会对环境和非目标生物产生毒性风险,从而确保了这些工程生物产品对农药残留进行现实管理的安全性,并为进一步开发提供了新的见解。功能微生物的生物修复技术的发展。

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